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首页> 外文期刊>Asian spine journal. >Effectiveness of Posterolateral Lumbar Fusion Varies with the Physical Properties of Demineralized Bone Matrix Strip
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Effectiveness of Posterolateral Lumbar Fusion Varies with the Physical Properties of Demineralized Bone Matrix Strip

机译:后外侧腰椎融合的效果随脱矿质骨基质带的物理特性而变化

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Study Design A randomized, controlled animal study. Purpose To investigate the effectiveness of fusion and new bone formation induced by demineralized bone matrix (DBM) strips with jelly strengths. Overview of Literature The form of the DBM can make a difference to the outcome. The effect of different jelly strengths on the ability of DBM to form new bone is not known. Methods Forty-eight rabbits were randomized into a control group and two experimental groups. In the control group (group 1), 1.4 g of autologous iliac crest bone was placed bilaterally. In the experimental groups, a high jelly strength DBM-hyaluronic acid (HA)-gelatin strip (group 2) and a low jelly strength DBM-HA-gelatin strip (group 3) were used. The fusion was assessed with manual manipulation and radiographs. The volume of the fusion mass was determined from computed tomographic images. Results The fusion rates as determined by manual palpation were 37.5%, 93.8% and 50.0% in group 1, group 2, and group 3, respectively ( p 3, 3,132.9±632.1 mm3, and 2,741.5±380.4 mm3 in group 1, group 2, and group 3, respectively ( p Conclusions These results indicate that differences in the structural and mechanical properties of gelatin that are associated with jelly strength influenced cellular responses such as cell viability and bony tissue ingrowth, facilitating greater bone fusion around high jelly strength implants.
机译:研究设计一项随机对照动物研究。目的研究具有矿物质强度的软化骨基质(DBM)带诱导融合和形成新骨的有效性。文献概述DBM的形式可以改变结果。未知不同胶冻强度对DBM形成新骨的能力的影响。方法48只家兔随机分为对照组和实验组。在对照组(第1组)中,双侧放置1.4 g自体bilateral骨。在实验组中,使用了高胶冻强度的DBM-透明质酸(HA)-明胶条(组2)和低胶冻强度的DBM-HA-明胶条(组3)。用手动操作和X光片评估融合。从计算机断层图像确定融合质量的体积。结果人工触诊测得的融合率在第1、2、3组分别为37.5%,93.8%和50.0%(p 3 ,3,132.9±632.1 mm 3 第1组,第2组和第3组分别为2,741.5±380.4 mm 3 (p结论)这些结果表明,与胶冻强度相关的明胶的结构和机械性能差异影响了细胞细胞活力和骨组织向内生长等反应,促进高胶凝强度植入物周围的骨融合。

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